5 resultados para modified simulated body fluid (m-SBF)

em ArchiMeD - Elektronische Publikationen der Universität Mainz - Alemanha


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Until today, autogenic bone grafts from various donor regions represent the gold standard in the field of bone reconstruction, providing both osteoinductive and osteoconductive characteristics. However, due to low availability and a disequilibrium between supply and demand, the risk of disease transfer and morbidity, usually associated with autogeneic bone grafts, the development of biomimic materials with structural and chemical properties similar to those of natural bone have been extensively studied. So far,rnonly a few synthetic materials, so far, have met these criteria, displaying properties that allow an optimal bone reconstitution. Biosilica is formed enzymatically under physiological-relevant conditions (temperature and pH) via silicatein (silica protein), an enzyme that was isolated from siliceous sponges, cloned, and prepared in a recombinant way, retaining its catalytic activity. It is biocompatible, has some unique mechanical characteristics, and comprises significant osteoinductive activity.rnTo explore the application of biosilica in the fields of regenerative medicine,rnsilicatein was encapsulated, together with its substrate sodium metasilicate, into poly(D,L-lactide)/polyvinylpyrrolidone(PVP)-based microspheres, using w/o/wrnmethodology with solvent casting and termed Poly(D,L-lactide)-silicatein silicacontaining-microspheres [PLASSM]. Both silicatein encapsulation efficiency (40%) and catalytic activity retention upon polymer encapsulation were enhanced by addition of an essential pre-emulsifying step using PVP. Furthermore, the metabolic stability, cytoxicity as well as the kinetics of silicatein release from the PLASSM were studied under biomimetic conditions, using simulated body fluid. As a solid support for PLASSM, a polyvinylpyrrolidone/starch/Na2HPO4-based matrix (termed plastic-like filler matrix containing silicic acid [PMSA]) was developed and its chemical and physical properties determined. Moreover, due to the non-toxicity and bioinactivity of the PMSA, it is suggested that PMSA acts as osteoconductive material. Both components, PLASSM and PMSA, when added together, form arnbifunctional 2-component implant material, that is (i)non-toxic(biocompatible), (ii)moldable, (iii) self-hardening at a controlled and clinically suitable rate to allows a tight insertion into any bone defect (iv) biodegradable, (v)forms a porous material upon exposure to body biomimetic conditions, and (vi)displays both osteoinductive (silicatein)and osteoconductive (PMSA) properties.rnPreliminary in vivo experiments were carried out with rabbit femurs, by creatingrnartificial bone defects that were subsequently treated with the bifunctional 2-component implant material. After 9 weeks of implantation, both computed tomography (CT) and morphological analyses showed complete resorption of the implanted material, concurrent with complete bone regeneration. The given data can be considered as a significant contribution to the successful introduction of biosilica-based implants into the field of bone substitution surgery.

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Solid oral dosage form disintegration in the human stomach is a highly complex process dependent on physicochemical properties of the stomach contents as well as on physical variables such as hydrodynamics and mechanical stress. Understanding the role of hydrodynamics and forces in disintegration of oral solid dosage forms can help to improve in vitro disintegration testing and the predictive power of the in vitro test. The aim of this work was to obtain a deep understanding of the influence of changing hydrodynamic conditions on solid oral dosage form performance. Therefore, the hydrodynamic conditions and forces present in the compendial PhEur/USP disintegration test device were characterized using a computational fluid dynamics (CFD) approach. Furthermore, a modified device was developed and the hydrodynamic conditions present were simulated using CFD. This modified device was applied in two case studies comprising immediate release (IR) tablets and gastroretentive drug delivery systems (GRDDS). Due to the description of movement provided in the PhEur, the movement velocity of the basket-rack assembly follows a sinusoidal profile. Therefore, hydrodynamic conditions are changing continually throughout the movement cycle. CFD simulations revealed that the dosage form is exposed to a wide range of fluid velocities and shear forces during the test. The hydrodynamic conditions in the compendial device are highly variable and cannot be controlled. A new, modified disintegration test device based on computerized numerical control (CNC) technique was developed. The modified device can be moved in all three dimensions and radial movement is also possible. Simple and complex moving profiles can be developed and the influence of the hydrodynamic conditions on oral solid dosage form performance can be evaluated. Furthermore, a modified basket was designed that allows two-sided fluid flow. CFD simulations of the hydrodynamics and forces in the modified device revealed significant differences in the fluid flow field and forces when compared to the compendial device. Due to the CNC technique moving velocity and direction are arbitrary and hydrodynamics become controllable. The modified disintegration test device was utilized to examine the influence of moving velocity on disintegration times of IR tablets. Insights into the influence of moving speed, medium viscosity and basket design on disintegration times were obtained. An exponential relationship between moving velocity of the modified basket and disintegration times was established in simulated gastric fluid. The same relationship was found between the disintegration times and the CFD predicted average shear stress on the tablet surface. Furthermore, a GRDDS was developed based on the approach of an in situ polyelectrolyte complex (PEC). Different complexes composed of different grades of chitosan and carrageenan and different ratios of those were investigated for their swelling behavior, mechanical stability, and in vitro drug release. With an optimized formulation the influence of changing hydrodynamic conditions on the swelling behavior and the drug release profile was demonstrated using the modified disintegration test device. Both, swelling behavior and drug release, were largely dependent on the hydrodynamic conditions. Concluding, it has been shown within this thesis that the application of the modified disintegration test device allows for detailed insights into the influence of hydrodynamic conditions on solid oral dosage form disintegration and dissolution. By the application of appropriate test conditions, the predictive power of in vitro disintegration testing can be improved using the modified disintegration test device. Furthermore, CFD has proven a powerful tool to examine the hydrodynamics and forces in the compendial as well as in the modified disintegration test device. rn

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In den letzten Jahren stieg in Deutschland der Gebrauch bzw. Missbrauch von Opioid-Analgetika zunehmend an. Das entwickelte Verfahren sollte unter Einbeziehung neuer Substanzen möglichst viele verschiedene Opioide und auch ihre pharmakologisch aktiven Stoffwechselprodukte berücksichtigen.rnVor Analyse wurden Blut-, Serum- oder Urinproben mit Phosphatpuffer versetzt und mittels Festphasenextraktion an C18-Säulenmaterial aufgearbeitet. Post-Mortem-Gewebematerial wurde mit isotonischer Kochsalzlösung versetzt, homogenisiert und anschließend durch eine Festphasenextraktion aufgereinigt. Haarproben wurden nach Zerkleinerung mit Methanol unter Ultrabeschallung extrahiert. Die Flüssigchromatographie gekoppelt mit Tandem-Massenspektrometrie (Elektrosprayionisation im positiven Modus) erwies sich als geeignetes Verfahren für die simultane Bestimmung der Opioide in biologischem Probenmaterial (Körperflüssigkeiten, Gewebe und Haaren). Der Multi-Analyt Assay erlaubt die quantitative Analyse von 35 verschiedenen Opioiden. Die Analyten wurden durch eine Phenyl-Hexyl Säule und einen Wasser/Acetonitril Gradienten durch eine UPLC 1290 Infinity gekoppelt mit einem 6490 Triple Quadrupol von Agilent Technologies separiert.rnDie LC/MS Methode zur simultanen Bestimmung von 35 Opioiden in Serum und Haaren wurde nach den Richtlinien der Gesellschaft für Toxikologische und Forensische Chemie (GTFCh) validiert. Im Fall der Serumvalidierung lagen die Nachweisgrenzen zwischen 0.02 und 0.6 ng/ml und die Bestimmungsgrenzen im Bereich von 0.1 bis 2.0 ng/ml. Die Kalibrationskurven waren für die Kalibrationslevel 1 bis 6 linear. Wiederfindungsraten lagen für alle Verbindungen zwischen 51 und 88 %, außer für Alfentanil, Bisnortiliidn, Pethidin und Morphin-3-Glucuronid. Der Matrixeffekt lag zwischen 86 % (Ethylmorphin) und 105 % (Desomorphin). Für fast alle Analyten konnten akzeptable Werte bei der Bestimmung der Genauigkeit und Richtigkeit nach den Richtlinien der GTFCh erhalten werden. Im Fall der Validierung der Haarproben lagen die Nachweisgrenzen zwischen 0.004 und 0.6 ng/Probe und die Bestimmungsgrenzen zwischen 0.1 ng/Probe und 2.0 ng/Probe. Für die Kalibrationslevel 1 bis 6 waren alle Kalibrationsgeraden linear. Die Wiederfindungsraten lagen für die Opioide im Bereich von 73.5 % (Morphin-6-Glucuronid) und 114.1 % (Hydrocodon). Die Werte für die Bestimmung der Richtigkeit lagen zwischen - 6.6 % (Methadon) und + 11.7 % (Pholcodin). Präzisionsdaten wurden zwischen 1.0 % für Dextromethorphan und 11.5 % für Methadon ermittelt. Die Kriterien der GTFCh konnten bei Ermittlung des Matrixeffekts für alle Substanzen erfüllt werden, außer für 6-Monoacetylmorphin, Bisnortilidin, Meperidin, Methadon, Morphin-3-glucuronid, Morphin-6-glucuronid, Normeperidin, Nortilidin und Tramadol.rnZum Test des Verfahrens an authentischem Probenmaterial wurden 206 Proben von Körperflüssigkeiten mit Hilfe der simultanen LC/MS Screening Methode untersucht. Über 150 Proben wurden im Rahmen von forensisch-toxikologischen Untersuchungen am Instituts für Rechtsmedizin Mainz analysiert. Dabei konnten 23 der 35 Opioide in den realen Proben nachgewiesen werden. Zur Untersuchung der Pharmakokinetik von Opioiden bei Patienten der anästhesiologischen Intensivstation mit Sepsis wurden über 50 Blutproben untersucht. Den Patienten wurde im Rahmen einer klinischen Studie einmal täglich vier Tage lang Blut abgenommen. In den Serumproben wurde hauptsächlich Sufentanil (0.2 – 0.8 ng/ml in 58 Fällen) und Piritramid (0.4 – 11 ng/ml in 56 Fällen) gefunden. Außerdem wurden die Proben von Körperflüssigkeiten und Gewebe von 13 verschiedenen Autopsiefällen mit Hilfe des Multi-Analyt Assays auf Opioide untersucht.rnIn einem zweiten Schritt wurde die Extraktions- und Messmethode zur Quantifizierung der 35 Opioide am Forensic Medicine Center in Ho Chi Minh City (Vietnam) etabliert. Insgesamt wurden 85 Herzblutproben von Obduktionsfällen mit Verdacht auf Opiatintoxikation näher untersucht. Der überwiegende Teil der untersuchten Fälle konnte auf eine Heroin- bzw. Morphin-Vergiftung zurückgeführt werden. Morphin wurde in 68 Fällen im Konzentrationsbereich 1.7 – 1400 ng/ml und der Heroinmetabolit 6-Monoactetylmorphin in 34 Fällen (0.3 – 160 ng/ml) nachgewiesen werden.rnSchließlich wurden noch 15 Haarproben von Patienten einer psychiatrischen Klinik, die illegale Rauschmittel konsumiert hatten, mit Hilfe der simultanen Opioid-LC/MS Screeningmethode gemessen. Die Ergebnisse der Untersuchung wurden mit früheren Auswertungen von gaschromatographischen Analysen verglichen. Es zeigte sich eine weitgehende Übereinstimmung der Untersuchungsergebnisse für die Opioide 6-Monoacetylmorphin, Morphin, Codein, Dihydrocodein und Methadon. Mit der LC/MS Methode konnten weitere Substanzen, wie zum Beispiel Bisnortilidin, Dextromethorphan und Tramadol in den Haarproben gefunden werden, die bislang nicht entdeckt worden waren.rn

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The production, segregation and migration of melt and aqueous fluids (henceforth called liquid) plays an important role for the transport of mass and energy within the mantle and the crust of the Earth. Many properties of large-scale liquid migration processes such as the permeability of a rock matrix or the initial segregation of newly formed liquid from the host-rock depends on the grain-scale distribution and behaviour of liquid. Although the general mechanisms of liquid distribution at the grain-scale are well understood, the influence of possibly important modifying processes such as static recrystallization, deformation, and chemical disequilibrium on the liquid distribution is not well constrained. For this thesis analogue experiments were used that allowed to investigate the interplay of these different mechanisms in-situ. In high-temperature environments where melts are produced, the grain-scale distribution in “equilibrium” is fully determined by the liquid fraction and the ratio between the solid-solid and the solid-liquid surface energy. The latter is commonly expressed as the dihedral or wetting angle between two grains and the liquid phase (Chapter 2). The interplay of this “equilibrium” liquid distribution with ongoing surface energy driven recrystallization is investigated in Chapter 4 and 5 with experiments using norcamphor plus ethanol liquid. Ethanol in contact with norcamphor forms a wetting angle of about 25°, which is similar to reported angles of rock-forming minerals in contact with silicate melt. The experiments in Chapter 4 show that previously reported disequilibrium features such as trapped liquid lenses, fully-wetted grain boundaries, and large liquid pockets can be explained by the interplay of the liquid with ongoing recrystallization. Closer inspection of dihedral angles in Chapter 5 reveals that the wetting angles are themselves modified by grain coarsening. Ongoing recrystallization constantly moves liquid-filled triple junctions, thereby altering the wetting angles dynamically as a function of the triple junction velocity. A polycrystalline aggregate will therefore always display a range of equilibrium and dynamic wetting angles at raised temperature, rather than a single wetting angle as previously thought. For the deformation experiments partially molten KNO3–LiNO3 experiments were used in addition to norcamphor–ethanol experiments (Chapter 6). Three deformation regimes were observed. At a high bulk liquid fraction >10 vol.% the aggregate deformed by compaction and granular flow. At a “moderate” liquid fraction, the aggregate deformed mainly by grain boundary sliding (GBS) that was localized into conjugate shear zones. At a low liquid fraction, the grains of the aggregate formed a supporting framework that deformed internally by crystal plastic deformation or diffusion creep. Liquid segregation was most efficient during framework deformation, while GBS lead to slow liquid segregation or even liquid dispersion in the deforming areas.

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Coarse graining is a popular technique used in physics to speed up the computer simulation of molecular fluids. An essential part of this technique is a method that solves the inverse problem of determining the interaction potential or its parameters from the given structural data. Due to discrepancies between model and reality, the potential is not unique, such that stability of such method and its convergence to a meaningful solution are issues.rnrnIn this work, we investigate empirically whether coarse graining can be improved by applying the theory of inverse problems from applied mathematics. In particular, we use the singular value analysis to reveal the weak interaction parameters, that have a negligible influence on the structure of the fluid and which cause non-uniqueness of the solution. Further, we apply a regularizing Levenberg-Marquardt method, which is stable against the mentioned discrepancies. Then, we compare it to the existing physical methods - the Iterative Boltzmann Inversion and the Inverse Monte Carlo method, which are fast and well adapted to the problem, but sometimes have convergence problems.rnrnFrom analysis of the Iterative Boltzmann Inversion, we elaborate a meaningful approximation of the structure and use it to derive a modification of the Levenberg-Marquardt method. We engage the latter for reconstruction of the interaction parameters from experimental data for liquid argon and nitrogen. We show that the modified method is stable, convergent and fast. Further, the singular value analysis of the structure and its approximation allows to determine the crucial interaction parameters, that is, to simplify the modeling of interactions. Therefore, our results build a rigorous bridge between the inverse problem from physics and the powerful solution tools from mathematics. rn